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Diffraction and shaping analysis of excimer laser through an ultrasonic grating

机译:准分子激光通过超声光栅的衍射和整形分析

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摘要

A novel numerical simulation method for the shaping of an excimer laser beam by an acoustic grating is proposed. Partially coherent theory and extended Huygens-Fresnel principle are used to analyze the light intensity diffraction pattern. Fast Fourier transform function FFT in the Matlab is used to calculate the numerical integral, which makes the integral operation simple and efficient. It is shown by a numerical simulation that the output intensity distribution is closely related to the coherence width, Raman-Nath comprehensive parameter, diffraction distance and ultrasonic wave frequency. The simulation results show that a flat top beam can be obtained by controlling these parameters. On the other hand, the results are used as an effective analytic tool for the determination of the design parameters of acousto-optic modulator.
机译:提出了一种利用声光栅对准分子激光束整形的新型数值模拟方法。使用部分相干理论和扩展的惠更斯-菲涅耳原理来分析光强衍射图。 Matlab中的快速傅立叶变换函数FFT用于计算数值积分,从而使积分运算简单有效。数值模拟表明,输出强度分布与相干宽度,拉曼-纳斯综合参数,衍射距离和超声波频率密切相关。仿真结果表明,通过控制这些参数可以获得平坦的顶梁。另一方面,该结果被用作确定声光调制器设计参数的有效分析工具。

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